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Electrocatalytic reduction of dioxygen by cobalt porphyrin-modified glassy carbon electrode with single-walled carbon nanotubes and nafion in aqueous solutions

机译:钴卟啉修饰的单壁碳纳米管修饰玻碳电极在水溶液中的电催化还原

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摘要

Cobalt porphyrin (CoP)-modified glassy carbon electrode (GCE) with single-walled carbon nanotubes (SWNTs) and Nafion demonstrated a higher electrocatalytic activity for the reduction of dioxygen in 0.1 M H{sub}2SO{sub}4 solution. Cyclic and hydrodynamic voltammetry at the CoP-SWNTs/GCE-modified electrodes in O{sub}2-saturated aqueous solutions was used to study the electrocatalytic pathway. Compared with the CoP/GCE-modified electrodes, the reduction potential of dioxygen at the CoP-SWNTs/GCE-modified electrodes was shifted to the positive direction and the limiting current was greatly increased. Especially, the Co(TMPP)-SWNTs/GCE-modified electrode was catalyzed effectively by the 4e{sup}- reduction of dioxygen to water, because hydrodynamic voltammetry revealed the transference of approximately four electrons for dioxygen reduction and the minimal generation of hydrogen peroxide in the process of dioxygen reduction.
机译:带有单壁碳纳米管(SWNT)的钴卟啉(CoP)修饰的玻碳电极(GCE)和Nafion在0.1 M H {sub} 2SO {sub} 4溶液中表现出较高的电催化活性,可用于还原双氧。在O {sub} 2-饱和水溶液中CoP-SWNTs / GCE修饰电极上的循环伏安伏安法用于研究电催化途径。与CoP / GCE修饰电极相比,CoP-SWNTs / GCE修饰电极上的双氧还原电势向正方向移动,极限电流大大增加。尤其是,Co(TMPP)-SWNTs / GCE修饰的电极通过将双氧4e {sup}-还原为水而被有效地催化,因为流体动力学伏安法揭示了大约四个电子的转移用于双氧还原和最少的过氧化氢生成在双氧还原过程中。

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